Flue gas carbon capture membrane module
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Product Description
Flue gas carbon capture membrane module
Sci-Nano develops ultra-fine PTFE hollow fiber membrane and high-efficiency carbon capture membrane absorber, which can be widely used in carbon capture and acid gas capture processes such as natural gas, flue gas, biogas, and chemical production tail gas., which can be widely used in carbon capture and acid gas capture processes such as natural gas, flue gas, biogas, and chemical production tail gas.
Carbon Capture and Storage (CCS) refers to a technology that collects carbon dioxide (CO2) produced by large power plants and stores it using various methods to prevent it from being released into the atmosphere. According to the process, CCUS can be divided into several major links: capture, transportation, utilization and storage. CCUS can capture up to 90% of CO2 generated by the use of fossil fuels in power generation and industrial processes, with a high level of decarbonization; but it also faces risks such as leakage and pollutant emissions. This technology is considered to be the most economical and feasible method to reduce greenhouse gas emissions and slow down global warming on a large scale in the future.
Membrane absorption technology is a new and efficient process for carbon capture. Anhui Konano combined with the development of ultra-fine PTFE hollow fiber membranes by the Chinese Academy of Sciences to develop a high-efficiency carbon capture membrane absorber, which can be widely used in natural gas, flue gas, biogas, Carbon capture and acid gas capture processes such as chemical production tail gas.
Application field:
· Steel, industry, shipping, coal and electricity, energy, automobiles, petrochemicals, cement, oil fields, hydrogen production and other industries
Product advantages:
· Higher filling density, traditional absorption tower is generally 100-250㎡/m³, membrane contact system can reach 1000-2500㎡/m³ or higher.
· Reduce the size of the equipment, reduce the weight and height of the equipment compared with traditional absorption towers.
· Better operational flexibility: avoid bubbling, flooding, and mist entrainment.
· The gas and liquid phase flow rates can be controlled independently without restrictions on the gas-liquid ratio
· Insensitive to movement (critical for offshore platform operations)
· Can be skid-mounted and modularly enlarged
Key words: Flue gas carbon capture membrane module
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